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            Dual-Band Orthomode Transducer Based on Using Composite Right/Left-Handed Transmission Lines
            作者:GONG Ying-hui
            來源:本站原創
            更新時間:2014/1/16 10:38:00
            正文:

            (School of Electronic and information Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China.)

            Abstract: This paper proposes a novel orthomode transducer (OMT) based on using composite right/left-handed (CRLH) transmission lines (TLs), which accomplishes the same function at two different arbitrary frequencies. Theory, synthesis procedure, and implementation of the dual-band OMT are presented. First, the CRLH TL theory is given, and a microstrip implementation of a CRLH TL is described. A novel structure of the OMT by replacing the general pure right-handed (RH) TL branches with the CRLH TL branches is then proposed. The dual-band OMT exhibits return loss larger than 6dB in the first band and 17dB in the second band, phase difference , and amplitude imbalance less than 0.5dB. The research also finds that the jumpers have a remarkable effect on the return loss and the return loss increases as the heights of jumpers decrease.
            Keywords: orthomode transducer; composite right/left-handed transmission lines; dual-band; jumper

             

             

            References
            [1] Caloz C. and Itoh T.. Electromagnetic Metamaterials: Transmission Line Theory and Microwave Applications[M]. Piscataway, NJ: Wiley-IEEE Press, 2005.
            [2] Caloz C. and Itoh T.. Application of the Transmission Line Theory of Left-Handed Materials to the Realization of a Microstrip LH Transmission Line[A]. IEEE AP-S Int. Symp. Dig., 2002, 2: 421-415.
            [3] Lin I., Caloz C. and Itoh T.. A Branch-Line Coupler with Two Arbitrary Operating Frequencies Using Left-Handed Transmission Lines[A]. IEEE MTT-S Int. Microwave Symp. Dig., Philadephia, PA, 2003: 325-328.
            [4] Caloz C. and Sanada A..  A Novel Composite Right/Left-Handed Coupled-Line Directional Coupler with Arbitrary Coupling Level and Broad Bandwidth[J]. IEEE Transactions on Microwave Theory and Techniques, 2004, 52 (3): 980-992.
            [5] Caloz C. and Itoh T.. A Novel Mixed Conventional Microstrip and Composite Right/Left-Handed Backward-Wave Directional Coupler with Broadband and Tight Coupling Characteristics[J]. IEEE Microwave and Wireless Components Letters, 2004, 24 (1): 31-33.
            [6] Okabe H., Caloz C. and Itoh T.. A Compact Enhanced-Bandwith Hybrid Ring Using an Artificial Lumped-Element Left-Handed Transmission-Line Section[J]. IEEE Transactions on Microwave Theory and Techniques, 2004, 51 (3): 798-803.
            [7] Caloz C., Chang C. C. and Itoh T.. Full-Wave Verification of the Fundamental Properties of Left-Handed Materials in Waveguide Configurations[J]. J. Appl. Phys., 2001, 90 (11): 5483-5486.
            [8] Caloz C. and Itoh T.. Novel Microwave Devices and Structures Based on the Transmmission Line Approach of Meta-Materials[A]. IEEE MTT-S Int. Microwave Symp. Dig., Philadelphia, PA, 2003: 187-190.
            [9] Ruppin R.. Surface Polaritons of a Left-Handed Material Slab[J]. J. Phys., Condens. Matter, 2001, 90 (11): 1811-1819.
            [10] Shelby R. A., Smith D. R. and Schultz S.. Experimental Verfication of a Negative Index of Refraction[J]. Science, 2001, 292: 77-79.

             

            作者簡介
            鞏英輝,1991年生于山東省臨沂市平邑縣。2007年考入山東大學物理學院,2011年取得微電子專業理學學士學位。同年進入北京航空航天大學電子信息工程學院,攻讀電子科學與技術專業工學碩士學位。目前的研究方向包括緊縮場饋源天線的設計,基于左手材料的微波器件的設計等。

             
             
               
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